Abstrakt
The transport sector is one of the major contributors to greenhouse gas emissions. This study investigated three greenhouse gases emitted from road transport using a probe vehicle: CO2, N2O and CH 4 emissions as a function temperature. It should be highlighted that methane is a greenhouse gas that similarly to carbon dioxide contributes to global warming and climate change.Anoxidation catalyst was used to investigate CO2, N2O and CH4 GHG emissions over a real world driving cycle that included urban congested traffic and extra-urban driving conditions. The results were determined under hot start conditions, but in congested traffic the catalyst cooled below its light off temperature and this resulted in considerable N2O emissions as the oxidation catalyst temperature was in the N2O formation band.This showed higher N 2O during hot start than for diesel fuel and B100 were compared. The B100 fuel was Fatty Acid Methyl Ester (FAME), derived from waste cooking oil, which was mainly RME. A multifunctional additive package was added at 800ppm to control fuel injector deposit formation. GHG emissions were monitored using an on-board heated Temet FTIR exhaust emission analyzer. A Horiba on board emissions measuring system was also used to measures the exhaust mass flow rate together with air/fuel ratio. 172g/km was the certified CO2 value based on the standard test cycle and in the real world driving the vehicle's CO2 was similar. Methane emissions were negligible, and N 2O emissions were higher than for SI engines with a TWC, which was not expected, but this was due to the lower catalyst temperatures and the more frequent occurrence of stop/start events in congested traffic.
| Język oryginału | angielski |
|---|---|
| Czasopismo | SAE Technical Papers |
| Tom | 2 |
| Identyfikatory DOI | |
| Status publikacji | Opublikowano - 2013 |
| Wydarzenie | SAE 2013 World Congress and Exhibition - Detroit, MI, Stany Zjednoczone Czas trwania: 16 kwi 2013 → 18 kwi 2013 |
Cele SDG ONZ
Ten wynik przyczynia się do realizacji następujących celów zrównoważonego rozwoju
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Cel 11 Zrównoważone miasta i społeczności
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Cel 13 Działanie na rzecz klimatu
Obszary tematyczne ASJC Scopus
- Inżynieria motoryzacyjna
- Bezpieczeństwo, ryzyko, niezawodność i jakość
- Zanieczyszczenia
- Inżynieria przemysłowa i produkcyjna
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